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Nonlinear Diffusion Acceleration of the Least-Squares Transport Equation in Geometries with Voids

机译:带空隙的几何中最小二乘输运方程的非线性扩散加速

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In this paper we show the extension of nonlinear diffusion acceleration (NDA) to geometries containing small voids using a weighted-least-squares (WLS) high-order equation. Even though the WLS equation is well defined in voids, the low-order drift-diffusion equation was not defined in materials with a zero cross section. This paper derives the necessary modifications to the NDA algorithm. We show that a small change to the NDA closure term and a nonlocal definition of the diffusion coefficient solve the problems for void regions. These changes do not affect the algorithm for optically thick material regions while making the algorithm well defined in optically thin ones. We use a Fourier analysis to perform an iterative analysis to confirm that the modifications result in a stable and efficient algorithm. Later in the paper, numerical results of our method are presented. We test this formulation with a small, one-dimensional test problem. Additionally, we present results for a modified version of the C5G7 benchmark containing voids as a more complex, reactor-like problem. We compared our results to Texas A&M's transport code PDT, utilizing a first-order discontinuous formulation as reference and the self-adjoint angular flux equation with void treatment (SAAF tau), a different second-order form. The results indicate that the NDA WLS performed comparably or slightly worse then the asymmetric SAAF tau while maintaining a symmetric discretization matrix.
机译:在本文中,我们使用加权最小二乘(WLS)高阶方程显示了非线性扩散加速(NDA)到包含小空隙的几何形状的扩展。即使WLS方程在空隙中定义良好,但在横截面为零的材料中并未定义低阶漂移扩散方程。本文对NDA算法进行了必要的修改。我们表明,对NDA闭合项进行较小的更改以及对扩散系数的非局部定义可以解决空隙区域的问题。这些变化不会影响光学上较厚的材料区域的算法,而会使算法在光学上较薄的材料区域中得到很好的定义。我们使用傅立叶分析进行迭代分析,以确认修改后的结果是稳定有效的算法。在本文的后面,介绍了我们方法的数值结果。我们用一个小的一维测试问题来测试此公式。此外,我们提出了C5G7基准测试的修改版本的结果,该版本包含空隙,这是一个更复杂的类似反应堆的问题。我们将结果与德州农工大学的运输代码PDT进行了比较,使用一阶不连续公式作为参考,并将自伴角通量方程式与具有不同二阶形式的空隙处理(SAAF tau)进行了比较。结果表明,在保持对称离散矩阵的同时,NDA WLS的性能与不对称SAAF tau相当或稍差。

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